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Stand Up Architecture: STRUCTURAL DNA: Webinterface of dome generations
http://sa-mariavera.blogspot.com/2009/09/webinterface-of-dome-generations.html
Stand Up Architecture: STRUCTURAL DNA. Friday, September 11, 2009. Webinterface of dome generations. To see the evolution process of the domes! Subscribe to: Post Comments (Atom). Architectural Engineering: Dock Surprise! TORQUE, BEND, TWIST and PLAY. LOOKING FOR A ROOM MATE-! TECHNICAL BUILDING DESIGN: SHE'S DRESSED. Maria Vera van Embden Andres. View my complete profile. Webinterface of dome generations. Tim Veldhuis - Daylight and sun studies. Bart van de Water - Spatial bridge structures. Andre Chasz...
sa-mariavera.blogspot.com
Stand Up Architecture: STRUCTURAL DNA: Sep 11, 2009
http://sa-mariavera.blogspot.com/2009_09_11_archive.html
Stand Up Architecture: STRUCTURAL DNA. Friday, September 11, 2009. Webinterface of dome generations. To see the evolution process of the domes! Subscribe to: Posts (Atom). Architectural Engineering: Dock Surprise! TORQUE, BEND, TWIST and PLAY. LOOKING FOR A ROOM MATE-! TECHNICAL BUILDING DESIGN: SHE'S DRESSED. Maria Vera van Embden Andres. View my complete profile. Webinterface of dome generations. Tim Veldhuis - Daylight and sun studies. Bart van de Water - Spatial bridge structures. Andre Chaszar - Sta...
sa-mariavera.blogspot.com
Stand Up Architecture: STRUCTURAL DNA: GC - set-up
http://sa-mariavera.blogspot.com/2009/08/voronoi-set-up.html
Stand Up Architecture: STRUCTURAL DNA. Thursday, August 6, 2009. I decided after some discussion and thinking, to use the right support configuration for the model. Since cellular structures in nature, tend to arrange perpendicular to stiffer surfaces. This is the most optimal way to distribute forces within a structure. This phenomenon is also seen within radiolarian skeletons. 40 rings model with higher densities of points. This image illustrates the way the points are projected onto the dome in GC.
sa-mariavera.blogspot.com
Stand Up Architecture: STRUCTURAL DNA: Dec 2, 2009
http://sa-mariavera.blogspot.com/2009_12_02_archive.html
Stand Up Architecture: STRUCTURAL DNA. Wednesday, December 2, 2009. ACSA Presentation - PPT slides. Subscribe to: Posts (Atom). Architectural Engineering: Dock Surprise! TORQUE, BEND, TWIST and PLAY. LOOKING FOR A ROOM MATE-! TECHNICAL BUILDING DESIGN: SHE'S DRESSED. Maria Vera van Embden Andres. View my complete profile. ACSA Presentation - PPT slides. Tim Veldhuis - Daylight and sun studies. Bart van de Water - Spatial bridge structures. Building Technology at TU Delft. Make the Design to be Meaningful!
sa-mariavera.blogspot.com
Stand Up Architecture: STRUCTURAL DNA: May 16, 2010
http://sa-mariavera.blogspot.com/2010_05_16_archive.html
Stand Up Architecture: STRUCTURAL DNA. Sunday, May 16, 2010. ARCHITECTURAL DNA: A genetic exploration of complex structures. I am glad to announce that we've further developed our topic of Structural DNA. We submitted a new paper to Smart Geometry: The Evolution of Parametric Design and Practice. I added the abstract and some images of our new paper below. Keywords: structural morphology, parametric design, genetic algorithm, structural optimization. Subscribe to: Posts (Atom). LOOKING FOR A ROOM MATE-!
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Stand Up Architecture: STRUCTURAL DNA: Jul 14, 2009
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Stand Up Architecture: STRUCTURAL DNA. Tuesday, July 14, 2009. I tried to combine some different types of tessellations for the dome, in order to respond to the wind forces and. Gravity acting on the structure. The first three images are the combination of the wind trajectories, as discussed before, and "vertical" ribs to lead the self weight to the ground. Compression ribs following trajectories and connected to get a Delaunay triangulation. Integrating both options in one shell also might work. The nex...
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Stand Up Architecture: STRUCTURAL DNA: May 6, 2009
http://sa-mariavera.blogspot.com/2009_05_06_archive.html
Stand Up Architecture: STRUCTURAL DNA. Wednesday, May 6, 2009. First test in STAAD. To explore the set up of the new process, we tested a basic hexagon dome structure, parametrically built in GC, on structural performance in STAAD. The results are clear. Supprt/load conditions: simple pinned supports and a 1 N/m2 load. The deflection is very clearly demonstrated in this movie:. Exploring radiolarian skeletons (relation between their shape and forces acting on them). Get back to you soon. Chang Yu Chou - ...
sa-mariavera.blogspot.com
Stand Up Architecture: STRUCTURAL DNA: Aug 6, 2009
http://sa-mariavera.blogspot.com/2009_08_06_archive.html
Stand Up Architecture: STRUCTURAL DNA. Thursday, August 6, 2009. I decided after some discussion and thinking, to use the right support configuration for the model. Since cellular structures in nature, tend to arrange perpendicular to stiffer surfaces. This is the most optimal way to distribute forces within a structure. This phenomenon is also seen within radiolarian skeletons. 40 rings model with higher densities of points. This image illustrates the way the points are projected onto the dome in GC.
sa-mariavera.blogspot.com
Stand Up Architecture: STRUCTURAL DNA: Apr 16, 2009
http://sa-mariavera.blogspot.com/2009_04_16_archive.html
Stand Up Architecture: STRUCTURAL DNA. Thursday, April 16, 2009. One step back. Research Approach. I looked back into the radiolarians in order to decide on a renewed approach for the dome project. Please check the image below for some key observations. Radiolarian dome shape principles. What seems interesting to me, learning from radiolarians, is:. In which ways would some of their basis principles work for architectural purposes? Shape of dome, density of homogenic grid. Different dome shapes with cert...